JPH06102498B2 - Winding core for rolls - Google Patents

Winding core for rolls

Info

Publication number
JPH06102498B2
JPH06102498B2 JP59196486A JP19648684A JPH06102498B2 JP H06102498 B2 JPH06102498 B2 JP H06102498B2 JP 59196486 A JP59196486 A JP 59196486A JP 19648684 A JP19648684 A JP 19648684A JP H06102498 B2 JPH06102498 B2 JP H06102498B2
Authority
JP
Japan
Prior art keywords
winding
support
winding core
supporting
web
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP59196486A
Other languages
Japanese (ja)
Other versions
JPS60178147A (en
Inventor
ホニゲル ヴアルネル
Original Assignee
フエラグ アーゲー
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by フエラグ アーゲー filed Critical フエラグ アーゲー
Publication of JPS60178147A publication Critical patent/JPS60178147A/en
Publication of JPH06102498B2 publication Critical patent/JPH06102498B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H29/00Delivering or advancing articles from machines; Advancing articles to or into piles
    • B65H29/006Winding articles into rolls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H18/00Winding webs
    • B65H18/28Wound package of webs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2301/00Handling processes for sheets or webs
    • B65H2301/40Type of handling process
    • B65H2301/41Winding, unwinding
    • B65H2301/419Winding, unwinding from or to storage, i.e. the storage integrating winding or unwinding means
    • B65H2301/4192Winding, unwinding from or to storage, i.e. the storage integrating winding or unwinding means for handling articles of limited length in shingled formation
    • B65H2301/41922Winding, unwinding from or to storage, i.e. the storage integrating winding or unwinding means for handling articles of limited length in shingled formation and wound together with single belt like members
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/10Handled articles or webs
    • B65H2701/19Specific article or web
    • B65H2701/1932Signatures, folded printed matter, newspapers or parts thereof and books

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Winding Of Webs (AREA)
  • Replacement Of Web Rolls (AREA)
  • Steroid Compounds (AREA)
  • Epoxy Compounds (AREA)
  • Storage Of Web-Like Or Filamentary Materials (AREA)
  • Basic Packing Technique (AREA)
  • Packaging Of Special Articles (AREA)
  • Making Paper Articles (AREA)

Abstract

The winding mandrel comprises a cylindrical winding drum or body which has two circumferential web members on its inner side. Each web member lies substantially in a plane which lies outside the center of gravity of the winding mandrel together with the coil or wound package. The winding mandrel bears upon two driven and tandemly arranged support wheels with one of its web members. A support roll is arranged beneath these support wheels. A lateral support surface of the web member bears against this support roll. The support wheels are constructed as friction drive wheels and, in addition to supporting the winding mandrel, serve to drive the winding mandrel. Due to the overturning or tipping moment induced by the eccentricity of the bearing points of the winding mandrel upon the support wheels in relation to the center of gravity, the winding mandrel is pressed against the support roll. This has the effect that the winding mandrel maintains the desired position during its rotation. This position is partly determined by the support roll constituting a contact roll arranged to be immovable in the direction of the longitudinal axis of the winding mandrel.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は、軟質シート材、特に印刷物からなる巻取り物
のための巻取りコアに関する。
Description: FIELD OF THE INVENTION The present invention relates to a winding core for a flexible sheet material, in particular a winding material consisting of a printed material.

(従来技術・発明が解決しようとする問題点) 輪転印刷機より次から次へと送り出されてくる印刷物を
巻取りコアに巻き取ることは知られている(例えばスイ
ス特許明細書第559691号、ドイツ特許公開明細書第3123
888号、第3236866号を参照)。印刷物を巻き取り終わる
とこれを中間保管所に保管し、適当な時期にこれを再び
取り出して処理ステーションに送り、この処理ステーシ
ョンで印刷物は巻戻しにより貯蔵巻取り物から再び取り
出される。
(Problems to be solved by the prior art / invention) It is known to wind a printed matter sent one after another from a rotary printing press onto a take-up core (for example, Swiss Patent Specification No. 559691). German patent specification No. 3123
See 888 and 3236866). When the printed matter has been wound up, it is stored in an intermediate storage, taken out again at a suitable time and sent to a processing station, where the printed matter is unwound again from the storage winding.

前述のドイツ特許公開明細書第3236866号により周知の
解決法では巻取りコアが可動枠のなかで支承され、かつ
それと結合されたままとなっている。こうして巻取りコ
アを巻取り物とともに搬送することも巻取りコアを巻取
・巻戻しステーションに連結・解除することも容易とな
る。だが、その代わりかなりの設備投資が必要であり、
1つの工場で、この機能的ではあるが高価な可動枠が数
多く必要となり、しかもこの可動枠は多かれ少なかれ中
間保管所で長時間じゃまされる。空の枠にしろ、印刷物
を巻き取った枠にしろ、その保管には比較的広いスペー
スが必要となる。
In the solution known from DE-A-3236866 mentioned above, the winding core is supported in the movable frame and remains connected to it. In this way, it is easy to transport the winding core together with the material to be wound and to connect / disconnect the winding core to / from the winding / rewinding station. But instead, it requires a lot of capital investment,
A single factory requires a large number of this functional but expensive movable frame, and more or less this movable frame is hampered in the intermediate storage for a long time. Whether it is an empty frame or a frame on which printed matter is wound up, a relatively large space is required for its storage.

スイス特許明細書第559691号により周知の巻取りコアは
中間巻取り円筒を有し、印刷物の巻取・巻戻しを行うに
あたって巻取り円筒はその内径に等しい直径を有する駆
動軸に取り付けねばならない。巻取り円筒を駆動軸に取
り付け、またそれから取り外す作業は面倒であるばかり
か或る程度の慎重さも必要とする。しかも巻取りコアは
駆動軸にきちんと嵌まるよう正確に取り扱わねばならな
い。
The winding core known from Swiss Pat. No. 5,559,691 has an intermediate winding cylinder, which must be mounted on a drive shaft with a diameter equal to its inner diameter in order to wind and unwind the print. Attaching and removing the take-up cylinder to and from the drive shaft is both tedious and requires some caution. Moreover, the winding core must be handled accurately so that it fits snugly on the drive shaft.

運搬し易いようこの周知の巻取りコアの巻取り円筒は踏
み面、またはころがり面として構成した側面を有する。
しかし、この側面のため空の巻取りコアを保管するさい
空間の利用効率が悪い。しかもこの巻取りコアの製造費
は比較的高い。
For ease of transport, the winding cylinder of this known winding core has a side surface configured as a tread or rolling surface.
However, due to this side surface, the efficiency of utilizing the space for storing the empty winding core is poor. Moreover, the manufacturing cost of this winding core is relatively high.

そこで本発明は、貯蔵に必要なスペースが少なく取扱い
が容易でまた巻取り巻戻しにあたって単純、かつ故障し
にくい構造の装置と連結することのできる簡単、かつコ
ンパクトな構造を有し安価に製造できる巻取りコアを提
供することを目的とする。
Therefore, the present invention has a simple and compact structure that requires less space for storage, is easy to handle, and is simple in winding and rewinding, and can be connected to a device that does not easily malfunction, and can be manufactured at low cost. The purpose is to provide a winding core.

(問題を解決するための手段) この目的を達成するために、本発明における巻取りコア
は、巻取り円筒からなり、巻取り円筒は、その内面に沿
って延び、かつその長手軸に対してほぼ直角に延び、し
かも空の巻取りコアの重心から外れて位置した平面上に
設けた支持要素を備えており、該支持要素は支持輪によ
って巻取り円筒の半径方向において巻取り円筒を支持す
るための第1支持面と、支持手段によって巻取り円筒の
軸線方向において巻取り円筒を支持するための第2支持
面とを備えている。
(Means for Solving the Problem) In order to achieve this object, the winding core in the present invention comprises a winding cylinder, the winding cylinder extending along an inner surface thereof and with respect to its longitudinal axis. A support element which extends substantially at right angles and which lies on a plane lying off the center of gravity of the empty winding core, said support element supporting the winding cylinder in the radial direction of the winding cylinder by means of a support wheel And a second supporting surface for supporting the winding cylinder in the axial direction of the winding cylinder by the supporting means.

(作用・効果) 好ましくは巻取り円筒から内向きに突出した環状ウエブ
または巻取り円筒の内面に向かって開口した環状溝によ
り支持要素を形成し、該支持要素を有する巻取りコアを
巻取り装置または巻戻し装置の支持輪に取り付けると、
支持要素の配置のため、空の巻取りコア、または巻取り
物を支えた巻取りコアの重心の外側で巻取りコアに傾動
モーメントが働き、該モーメントが巻取りコアまたは巻
取り物を傾斜位置にもたらそうと努める。他方、支持面
が巻取り装置または巻戻し装置の支えに当接することに
より、巻取りコアがこのような傾斜状態になるのを防止
する。この傾動モーメントにより巻取りコアは支持輪の
方を向いた、支えに一定の力で押圧され、巻取りコア、
従って巻取り物は巻取・巻戻し時、正しい状態、すなわ
ち垂直状態に確実に保たれる。巻戻しのとき支えに対す
る巻取り円筒の支持面のこの押圧を巻取りコアの制動に
利用することができ、制動機構を別に設けることは不用
となる。
(Operation / Effect) Preferably, the supporting element is formed by the annular web protruding inward from the winding cylinder or the annular groove opening toward the inner surface of the winding cylinder, and the winding core having the supporting element is used as the winding device. Or when attached to the support wheel of the rewinding device,
Due to the arrangement of the support elements, a tilting moment acts on the winding core outside the center of gravity of the empty winding core, or of the winding core supporting the winding, which moment causes the winding core or the winding to be in an inclined position. Try to bring to. On the other hand, the support surface abuts against the support of the winding device or the rewinding device to prevent the winding core from being in such an inclined state. Due to this tilting moment, the winding core faces the support wheel and is pressed by the support with a constant force,
Therefore, the wound material is surely kept in the correct state, that is, the vertical state, at the time of winding / unwinding. During unwinding, this pressing of the support surface of the winding cylinder against the support can be used to brake the winding core, making it unnecessary to provide a separate braking mechanism.

巻取りコアまたは巻取り物の取扱い、また特に巻取・巻
戻し装置へのそれらの連結および解除もきわめて簡単で
あり、巻取りコアを支持輪に乗せて、支えに当接させる
だけでよい。この取扱いは2個の離間配置した支持要素
を設けることにより簡単になる。好ましい実施態様で
は、好適な運搬機械、例えばフォークリフトが巻取りコ
アの一方の支持要素を支持し、他方の支持要素を支持輪
に載置することができる。
The handling of the winding core or the winding material, and in particular their connection to and disconnection from the winding and unwinding device, is also very simple, it is only necessary to mount the winding core on the support wheel and abut the support. This handling is facilitated by providing two spaced support elements. In a preferred embodiment, a suitable carrier machine, for example a forklift, can support one support element of the winding core and the other support element on the support wheel.

好ましくは少なくとも一方の支持要素を摩擦駆動装置ま
たは歯車駆動装置の一部として構成し、他方の部品は支
持輪の摩擦車または歯車により形成する。これにより巻
取りコアは支持輪に載置すると同時に駆動装置に連結す
ることができる。
Preferably at least one supporting element is designed as part of a friction drive or gear drive and the other part is formed by a friction wheel or gear of the support wheel. This allows the winding core to rest on the support wheel and at the same time be connected to the drive.

構造上特に単純な実施態様では第1、第2支持面は同一
部材、例えば前述のウエブまたは環状溝からなる支持要
素上に形成される。
In a structurally particularly simple embodiment, the first and second support surfaces are formed on the same member, for example a support element consisting of the aforementioned web or annular groove.

本発明による巻取りコアは構造が単純であり、過大な支
出を要することなく安価に製造することができる。空の
巻取りコアにしろ、巻取り物を有する巻取りコアにし
ろ、その貯蔵に必要なスペースは最小である。
The winding core according to the invention has a simple structure and can be manufactured inexpensively without undue expense. The space required for its storage, whether it is an empty winding core or a winding core with a winding, is minimal.

(実施例) 以下図面をもとに本発明を詳しく説明する。(Example) The present invention will be described in detail below with reference to the drawings.

第1図〜第4図、第6図および第7図に示した巻付けコ
ア1はすべて同一構造であり、両正面が開口した中空巻
付け円筒2を有する。巻付け円筒2の内面3に2個の離
間配置されている巻取り円筒2の内面3から半径方向に
突出した環状ウエブ4,5がある。このウエブ4,5は巻取り
円筒2の長手軸2aに対し直角で、かつ巻取りコア1の重
心Sから離れた平面EまたはE′上にある。各ウエブ4,
5はころがり面6(第1支持面)と、側部支持面7(第
2支持面)とを有し、該支持面7はそれぞれ他方のウエ
ブとは逆の側にある。この巻取りコア1は、周知の如く
印刷物により形成した複数の巻き層からなる巻取り物W
を支えるのに使われる。ドイツ特許公開明細書第312388
8号およびそれに対応する英国特許公開明細書第2081230
号に詳しく述べてあるように個々の巻き層間にベルトが
巻き付けてある。
The winding cores 1 shown in FIGS. 1 to 4, 6, and 7 all have the same structure, and have a hollow winding cylinder 2 which is open at both front surfaces. On the inner surface 3 of the winding cylinder 2 there are two spaced apart annular webs 4, 5 projecting radially from the inner surface 3 of the winding cylinder 2. The webs 4, 5 are at right angles to the longitudinal axis 2a of the winding cylinder 2 and on a plane E or E'away from the center of gravity S of the winding core 1. Each web 4,
5 has a rolling surface 6 (first supporting surface) and a side supporting surface 7 (second supporting surface), each supporting surface 7 being on the opposite side of the other web. As is well known, the winding core 1 is a winding material W including a plurality of winding layers formed of printed matter.
Used to support. German Patent Specification No. 312388
No. 8 and its corresponding British Patent Publication No. 2081230
A belt is wrapped between the individual winding layers as detailed in the publication.

第1図と第2図に示した巻取りステーションの第1実施
態様では、印刷物を巻取りコア1に巻き取るため、巻取
りコア1が駆動される。この目的のため巻取りコア1は
ウエブ4が2個の支持輪8,9に当接し、従って該支持輪
8,9が巻取りコア用支持体を形成する。両支持輪8,9は垂
直面F(第1図)を基準に対向し、この垂直面Fに対し
平行な軸8a、または9aに取付けてある。特に第2図が示
すように支持輪8,9が環状溝8′または9′を有し、該
溝にウエブ4が係合し、ウエブのころがり面6が環状溝
8′,9′の底に接触する。両支持輪8,9は摩擦車として
構成してある。すなわち、少なくともウエブ4のころが
り面6と支持輪8,9との間に摩擦結合が成立している。
環状溝8′,9′の幅がウエブ4の厚さに適合してあるこ
とにより、ウエブ4の側面と環状溝8′,9′の側壁との
間にも、やはり摩擦結合が成立している。支持輪8,9の
駆動軸8a,9aには、更に鎖車10または11が取付けてあ
る。該鎖車は符号12を付けたケーシングのなかに配置し
てあり、駆動軸8a,9a用軸受も、該ケーシング12に固着
してある。前記鎖車10,11は、それぞれ駆動鎖13,14を介
して鎖車15または16と駆動結合の関係にある。両方の鎖
車15,16は一体をなしており、ケーシング12内で回転可
能に支承した軸18に取り付けてある。該軸は更に別の鎖
車19を支えており、該鎖車を介して駆動鎖20が回転す
る。この駆動鎖は巻取り駆動装置22の従動軸上に配置し
た鎖車21と咬み合う。この巻取り駆動装置22は周知の構
造のものであり、例えばピー・イー・フアウアントリー
プ・ヴエルナ・ライマース・カー・ゲー社より販売され
ている。この巻取り駆動装置22の駆動軸は、更に別の鎖
車23を支え、該鎖車23は駆動鎖24を介し、駆動モータ26
の軸に取付けた鎖車25と結合してある。前記駆動モータ
26はケーシング12をも支えたベース27に固着してある。
In the first embodiment of the winding station shown in FIGS. 1 and 2, the winding core 1 is driven in order to wind the print onto the winding core 1. For this purpose, the winding core 1 is such that the web 4 bears against two supporting wheels 8, 9 and thus the supporting wheels
8,9 form the support for the winding core. Both supporting wheels 8 and 9 face each other with respect to a vertical plane F (Fig. 1) and are mounted on a shaft 8a or 9a parallel to the vertical plane F. In particular, as shown in FIG. 2, the supporting wheels 8 and 9 have annular grooves 8'or 9 ', into which the web 4 engages, and the rolling surface 6 of the web has the bottom of the annular grooves 8', 9 '. To contact. Both support wheels 8 and 9 are constructed as friction wheels. That is, at least frictional coupling is established between the rolling surface 6 of the web 4 and the support wheels 8 and 9.
Since the width of the annular grooves 8 ', 9'is adapted to the thickness of the web 4, a frictional connection is also established between the side surface of the web 4 and the side walls of the annular grooves 8', 9 '. There is. Chain wheels 10 or 11 are further attached to the drive shafts 8a and 9a of the support wheels 8 and 9, respectively. The chain wheel is arranged in a casing denoted by reference numeral 12, and the bearings for the drive shafts 8a and 9a are also fixed to the casing 12. The chain wheels 10 and 11 are in drive connection with the chain wheels 15 and 16 via drive chains 13 and 14, respectively. Both chain wheels 15, 16 are integral and are mounted on a shaft 18 which is rotatably supported in the casing 12. The shaft carries a further chain wheel 19, through which the drive chain 20 rotates. This drive chain meshes with the chain wheel 21 arranged on the driven shaft of the winding drive device 22. The winding drive device 22 has a well-known structure, and is sold, for example, by P. E. Juantreap Vuelna Reimers Käger. The drive shaft of the winding drive device 22 supports a further chain wheel 23, which is driven by a drive motor 26 via a drive chain 24.
It is connected to the chain wheel 25 attached to the shaft of. The drive motor
26 is fixed to a base 27 which also supports the casing 12.

ケーシング12には、更にブラケット28が取付けてあり、
そのなかでボルト29が垂直方向で保持されている。この
ボルト29は支持転子31用軸受部30に通してあり、該転子
31はブラケット28に取付けたボルト29に沿って案内され
摺動可能である。軸受部30は圧縮ばね32によりブラケッ
ト28に設けた止め28aに向かって下方に押圧される。ブ
ラケット28で支持された支持転子31に巻取りコア1のウ
エブ4が、それも、しかもウエブの外側に支持面として
構成した側面7が、当接する。従って巻取りコア1はウ
エブ4を介し支持輪8,9により半径方向でも、また支持
転子31により軸方向でも支持されている。
A bracket 28 is further attached to the casing 12,
Among them, the bolt 29 is held vertically. The bolt 29 is passed through the bearing portion 30 for the supporting trochanter 31.
31 is slidable by being guided along a bolt 29 attached to the bracket 28. The bearing portion 30 is pressed downward by a compression spring 32 toward a stopper 28a provided on the bracket 28. The web 4 of the winding core 1 and the side surface 7 which is formed as a support surface on the outside of the web come into contact with the support rotator 31 supported by the bracket 28. Therefore, the winding core 1 is supported by the support wheels 8 and 9 via the web 4 both in the radial direction and by the support roller 31 in the axial direction.

以上の説明から明らかなように、巻取りコア1に巻取り
物Wを形成するため巻取りコアを摩擦車である支持輪8,
9が回転させ、摩擦車は駆動モータ26が駆動する。第1
図、第2図に図示省略したベルトを含む印刷物の巻取り
は基本的にはドイツ特許公開明細書第3123888合および
それに相当する英国特許公開明細書第2081230号に記載
の方法で行われる。
As is clear from the above description, in order to form the wound product W on the winding core 1, the winding core is used as the support wheel 8, which is a friction wheel.
9, the friction wheel is driven by the drive motor 26. First
The winding up of the printed matter, including the belt not shown in the figures and FIG. 2, is basically carried out by the method described in DE-A-3123888 and corresponding GB-A-2081230.

すでに述べたように、支持輪8,9で巻取りコア1を支え
ている個所が、空のまたは巻取り物を巻き付けた巻取り
コア1の重心Sを含む平面の外にあるので、コア1およ
び巻取り物Wの自重により巻取りコア1にモーメントが
働き、これが巻取りコア1、またはそのウエブ4を固定
支持転子31に押し付ける。これにより巻取りコア1は、
その回転中、常に支持転子31に確実に当接し、従って巻
戻し操作中、常に、支持転子31により確定された所定
の、すなわち垂直な位置を占める。従って、回転する巻
取りコア1を所定の位置で保持するのに必要な案内手段
は2個の支持輪8,9と支持転子31だけである。
As already mentioned, since the place supporting the winding core 1 by the supporting wheels 8 and 9 is outside the plane including the center of gravity S of the winding core 1 which is empty or wound with the material to be wound, A moment acts on the winding core 1 due to the self-weight of the winding material W, which pushes the winding core 1 or the web 4 thereof against the fixed support rotator 31. As a result, the winding core 1 is
During its rotation, it always makes positive contact with the supporting trochanter 31 and thus always occupies a predetermined or vertical position determined by the supporting trochanter 31 during the rewinding operation. Therefore, the only guide means required to hold the rotating winding core 1 in place is the two support wheels 8 and 9 and the support rotator 31.

巻取り物Wを巻き終わると巻取りコア1は巻取り物Wと
一緒に簡単に取り外すことができる。これは好適な運搬
機械、例えばフォークリフトを使って行うことができ
る。フォークリフトは露出したウエブ5を把持し、巻取
りコア1を巻取り物Wと一緒にウエブ4が支持輪8,9の
周面溝8′,9′を離れるまで持ち上げ、次に巻取りコア
1を巻取り物Wと一緒に運び去り、例えば、中間保管所
に持ち込む。巻取りコア1を持ち上げる間、軸受部30は
支持転子31とともに巻取りコア2の内面3に係合し、連
行され、圧縮ばね32の作用に抗して上昇する。巻取りコ
ア1を取り去ったのち軸受部30および支持転子31は圧縮
ばね32により再び止め28aに向かって下降する。軸受部3
0および支持転子31のこの摺動により、巻取りコア1を
取り去るさい、巻取り物W内の印刷物が支持転子31で損
傷するのを防止する。
After winding the winding material W, the winding core 1 can be easily removed together with the winding material W. This can be done using any suitable hauling machine, eg a forklift. The forklift grips the exposed web 5 and lifts the take-up core 1 together with the take-up W until the web 4 leaves the circumferential grooves 8 ', 9'of the support wheels 8, 9, and then the take-up core 1 Is carried away together with the wound material W, and, for example, brought to an intermediate storage. While the winding core 1 is being lifted, the bearing 30 together with the support roller 31 engages the inner surface 3 of the winding core 2, is entrained and rises against the action of the compression spring 32. After the winding core 1 is removed, the bearing portion 30 and the support rotator 31 are again lowered by the compression spring 32 toward the stop 28a. Bearing part 3
This sliding of 0 and the support rotator 31 prevents the printed matter in the web W from being damaged by the support rotator 31 when the winding core 1 is removed.

新たな空の巻取りコア1の連結も同様に行う。運搬機械
により、一方のウエブ5を把持して、巻取りコア1の他
方のウエブ4を支持輪8,9に載せると、巻取りコア1は
前述の理由で発生する傾動モーメントにより支持転子31
に当接する。こうして巻取りコア1の巻取りステーショ
ンへの連結は巻き終わった巻取りコア1を取り外す場合
と同様に簡単な手段によりすばやく行うことができる。
The connection of the new empty winding core 1 is performed in the same manner. When one web 5 is gripped by the carrying machine and the other web 4 of the winding core 1 is placed on the support wheels 8 and 9, the winding core 1 is supported by the tilting moment generated for the above-mentioned reason.
Abut. In this way, the winding core 1 can be connected to the winding station quickly by a simple means as in the case of removing the wound winding core 1.

以上のように巻取りコア1を摩擦駆動装置で駆動させる
代わりに、歯車駆動装置で巻取りコア1を駆動すること
もできる。その場合には両方の支持輪8,9を歯車として
構成し、ウエブ4,5に歯を設けて支持輪8,9と咬み合うよ
うにする必要があろう。第3図〜第5図に巻取り装置の
第2実施態様をあわらした。これは巻取りコア1の駆動
方式の点で第1図、第2図の実施態様と相違している。
両方の実施態様に共通、または対応する部品については
第3図、第5図においても第1図、第2図と同じ符号を
付した。以下、第2実施態様を第1図、第2図の実施態
様からは異った第2実施態様の特徴についてのみ論じ
る。
Instead of driving the winding core 1 by the friction driving device as described above, the winding core 1 can be driven by the gear driving device. In that case, it would be necessary to construct both support wheels 8, 9 as gears and provide teeth on the webs 4, 5 so that they mesh with the support wheels 8, 9. A second embodiment of the winding device is shown in FIGS. 3 to 5. This is different from the embodiment of FIGS. 1 and 2 in the drive system of the winding core 1.
Parts common to or corresponding to both embodiments are given the same reference numerals in FIGS. 3 and 5 as in FIGS. 1 and 2. In the following, the second embodiment will be discussed only on the features of the second embodiment which differ from the embodiments of FIGS. 1 and 2.

第3図〜第5図の実施例では、両方の支持輪8,9は駆動
されるのではなく第1図、第2図のものより多少大きい
別構成のブラケット28に単に回転自在に支承されてい
る。軸18に取り付けてあるのは2つの鎖車15,16ではな
く1個の鎖車33であり、この鎖車は駆動鎖34を介して軸
36に取り付けた鎖車35と駆動結合の関係にある。この軸
はブラケット28に通じ、該ブラケット28とケーシング12
に固着した支持部とで支承してある。軸36の自由端には
特に第5図からわかるようにu形断面の回し要素37が設
けてある。回し要素37の脚部により限定された空間に2
個の駆動レバー38,39が配置してあり、該レバー38,39は
第3図、第4図から明らかなように回し要素37から側方
に突出している。この駆動レバー38,39が自由端にボル
ト40を有し、該ボルト40は外側ウエブ5の貫通孔41に差
し通してある(第4図)。各駆動レバー38,39は更に握
り42を有し、更に突出ボルト43を備えている。このボル
トは回し要素37のウエブに通してあり、自由端に環状肩
部44を有する(第5図)。この環状肩部44と回し要素37
との間に圧縮ばね45が配置してある。ボルト43は回し要
素37に固着したガイド46の滑りスリーブ47により軸方向
に摺動可能に案内してある。
In the embodiment of FIGS. 3-5, both support wheels 8 and 9 are not driven but are simply rotatably mounted on a bracket 28 which is slightly larger than that of FIGS. ing. Attached to the shaft 18 is not a two chain wheel 15,16 but a single chain wheel 33, which is connected via a drive chain 34 to the shaft.
There is a drive connection with the chain wheel 35 attached to 36. This shaft leads to a bracket 28, which is fitted to the bracket 28 and the casing 12.
It is supported by the support part fixed to the. The free end of the shaft 36 is provided with a turning element 37 of u-shaped cross section, as can be seen in particular in FIG. 2 in the space limited by the legs of the turning element 37
Arranged are individual drive levers 38, 39 which project laterally from the turning element 37, as can be seen in FIGS. 3 and 4. The drive levers 38, 39 have bolts 40 at their free ends, which bolts 40 pass through through-holes 41 in the outer web 5 (FIG. 4). Each drive lever 38, 39 further has a grip 42 and further has a projecting bolt 43. The bolt passes through the web of the turning element 37 and has an annular shoulder 44 at its free end (Fig. 5). This annular shoulder 44 and turning element 37
A compression spring 45 is arranged between the and. The bolt 43 is axially slidably guided by a sliding sleeve 47 of a guide 46 fixed to the turning element 37.

以上の説明から明らかなように巻取りコア1は駆動レバ
ー38,39および回しボルト40を介して巻取りコア1と回
し要素37とが連結されることにより回し要素37が駆動さ
れると自分も回転する。
As is apparent from the above description, the winding core 1 is connected to the winding core 1 and the turning element 37 via the drive levers 38 and 39 and the turning bolt 40, so that when the turning element 37 is driven, Rotate.

巻取り物Wを巻き終わったのち巻取りコア1を第1図、
第2図に関連して説明したようにして取り去ることがで
きるためには、まず前述の連動結合が解除されねばなら
ない。この目的のため握り42を矢印A(第5図)の方向
に引っ張って駆動レバー38,39を動かし、圧縮ばね45で
押しながら、該レバー38,39を回し要素37の内部から引
き出す。この運動の過程で回しボルト40もウエブ5の貫
通孔41から外れる。次に駆動レバー38,39は第3図に破
線で示した符号38′または39′の位置へと下向きに回
す。この位置のとき駆動レバー38,39は巻取りコア1が
巻取り物Wとともに支持輪8,9から揚起するのを妨たげ
ない。
After winding the winding material W, the winding core 1 is shown in FIG.
In order to be able to remove it as described in connection with FIG. 2, the interlocking connection mentioned above must first be released. For this purpose, the grip 42 is pulled in the direction of the arrow A (FIG. 5) to move the drive levers 38, 39 and, while being pressed by the compression spring 45, pull the levers 38, 39 out of the interior of the turning element 37. In the process of this movement, the turning bolt 40 also comes off from the through hole 41 of the web 5. The drive levers 38, 39 are then turned downwards to the position 38 'or 39' shown in broken lines in FIG. In this position, the drive levers 38, 39 do not prevent the winding core 1 with the winding W from being lifted from the supporting wheels 8, 9.

空の巻取りコア1を取り付けたのち駆動レバー38,39は
回しボルト40がウエブ5の貫通孔41に係合することにな
る作用位置に再び移動する。
After mounting the empty take-up core 1, the drive levers 38, 39 are again moved into the working position in which the turning bolt 40 engages the through hole 41 of the web 5.

第3図〜第5図に示した解決法では、第1図、第2図に
示した摩擦車駆動方式に比べ、巻取りコア1を希望する
速度で完壁に駆動する確実性および滑りを生じることな
くトルクを伝達する確実性が大きい。その代わり欠点と
して構造上コスト高となり、また連結解除時、手動操作
が必要となる。
In the solution shown in FIGS. 3 to 5, compared with the friction wheel drive system shown in FIGS. 1 and 2, the reliability and slippage of driving the winding core 1 to a complete wall at a desired speed can be improved. There is great certainty that torque will be transmitted without being generated. Instead, the cost is structurally high, and manual operation is required when disconnecting.

巻取りコア1用駆動装置が第3図、第4図では支持輪8,
9により分離されているが、もちろんそれとは異なる構
成にすることもできる。そうした変形構成の場合でも駆
動装置とウエブ4または5との間に着脱自在な回し結合
を設けることはやはり望ましいことである。
The drive device for the winding core 1 is shown in FIG. 3 and FIG.
They are separated by 9, but of course they can have different configurations. Even with such a variant, it is still desirable to provide a removable swivel connection between the drive and the web 4 or 5.

巻取り物Wから印刷物を取り出すため巻取りコア1は巻
取り物Wとともに、第6図、第7図にあらわしたような
巻戻しステーションに送られる。
To take out the printed matter from the winding material W, the winding core 1 is sent together with the winding material W to a rewinding station as shown in FIGS. 6 and 7.

この巻戻しステーションはスタンド48を有し、該スタン
ド48は支持輪8,9の軸8aまたは9a用軸受49を有する。こ
の支持輪8,9は前述の巻取りステーションの場合と同様
に垂直面F(第6図)を基準に対向配置してあり、軸8
a,9aはこの垂直面Fに対し平行である。支持輪8,9はや
はり周面溝8′または9′を有し、該周面溝に巻取りコ
ア1のウエブ4が係合し、該ウエブのころがり面6が周
面溝8′,9′の底部に接触する。従って、両方の支持輪
8,9は巻取りステーションの支持輪8,9と同様に巻取りコ
ア1用支持体となっており、巻取りコア1を半径方向で
支持する。
This unwinding station has a stand 48, which has a bearing 49 for the shaft 8a or 9a of the supporting wheels 8,9. The supporting wheels 8 and 9 are arranged so as to face each other with respect to the vertical plane F (FIG. 6) as in the case of the winding station described above.
a and 9a are parallel to this vertical plane F. The supporting wheels 8 and 9 also have circumferential grooves 8'or 9 ', into which the web 4 of the winding core 1 engages, the rolling surface 6 of the web having circumferential grooves 8'or 9'. Touch the bottom of the ′. Therefore, both support wheels
Similar to the support wheels 8 and 9 of the winding station, reference numerals 8 and 9 are support bodies for the winding core 1 and support the winding core 1 in the radial direction.

スタンド48に2個の保持板50が固着してあり、2本の離
間した垂直なボルト51が保持板内で保持してある。この
ボルト51は下端に支持板52を有し、該支持板52にブレー
キライニング53が取付けてある。ブレーキライニング53
は好適な材料、好ましくはプラスチック、例えば「ブル
コラン」からなる。巻取りコア1のウエブ4は、その外
側支持面7がブレーキライニング53に接触する。ブレー
キライニング53を含む支持板52は巻取りステーションに
おける支持転子31と同様に巻取りコア1をその長手軸2a
の方向で支持する。
Two holding plates 50 are fixed to the stand 48, and two spaced vertical bolts 51 are held in the holding plates. The bolt 51 has a support plate 52 at its lower end, and a brake lining 53 is attached to the support plate 52. Brake lining 53
Consists of a suitable material, preferably plastic, eg "Vulkollan". The outer support surface 7 of the web 4 of the winding core 1 contacts the brake lining 53. The support plate 52 including the brake lining 53 mounts the winding core 1 on its longitudinal axis 2a as well as the supporting rollers 31 in the winding station.
Support in the direction of.

ボルト51は支持板52に対向した端にブラケット54を有
し、該ブラケットからボルト55が突出している。このボ
ルトは、ウエブが支持輪8,9に接触したときボルトをウ
エブ4が把持できる程度にブラケット54から前方に延び
ている。保持板50の上面とボルト51の環状肩部51aとの
間に各1個の圧縮ばね56が配置してある。支持輪8,9に
巻取りコア1を取り付けるとボルト51は、ブレーキライ
ニングを含む支持板52も、第6図、第7図に示した作用
位置で保持される。そのさい、圧縮ばね56が圧縮され
る。巻取りコア1がその受けから揚起すると圧縮ばね56
はボルト51、およびそれと結合した部品52,53,54,55を
上昇させる。
The bolt 51 has a bracket 54 at the end facing the support plate 52, and a bolt 55 projects from the bracket. The bolt extends forward from the bracket 54 to the extent that the web 4 can grip the bolt when the web contacts the support wheels 8,9. One compression spring 56 is arranged between the upper surface of the holding plate 50 and the annular shoulder 51a of the bolt 51. When the winding core 1 is attached to the support wheels 8 and 9, the bolt 51 and the support plate 52 including the brake lining are held in the operating positions shown in FIGS. 6 and 7. At that time, the compression spring 56 is compressed. When the winding core 1 is lifted from its receiving end, the compression spring 56
Raises the bolt 51 and the parts 52, 53, 54, 55 connected thereto.

巻取り物Wからの印刷物の巻戻しは前述のドイツ特許公
開明細書第3123888号またはそれに相当する英国特許公
開明細書第2081230号に詳しく述べてあるように第6図
に破線で示したベルト57を周知の如く引っ張って行われ
る。この巻戻しのとき巻取りコア1が回転し、ウエブ4
がブレーキライニング53に当接することによりブレーキ
が働く。第1図、第2図をもとにすでに述べたのと同様
に支持輪8,9での巻取りコア1の支え個所は巻取り物W
を含む巻取りコア1の重心Sがある垂直面から離れてい
るので、巻取りコア1に傾動モーメントが働き、これに
より巻取りコア1またはウエブ4はブレーキライニング
53または支持板52の方に押される。巻取り物Wを一杯に
巻き取ったとき傾動モーメントは最大となり、巻取り物
Wが小さくなるにつれ小さくなる。それに応じて、ウエ
ブ4をブレーキライニング53の方に押す力も変化し、そ
の結果、望ましいことに制動効果は巻戻しが進むにつれ
減少する。
The unwinding of the printed material from the web W is carried out by means of the belt 57 shown in broken lines in FIG. 6 as described in detail in the aforementioned German patent application DE 3123888 or the corresponding British patent application WO 2081230. Is performed as is well known. During this rewinding, the winding core 1 rotates and the web 4
The brake works by contacting the brake lining 53. As described above with reference to FIGS. 1 and 2, the supporting point of the winding core 1 on the supporting wheels 8 and 9 is the winding material W.
Since the center of gravity S of the winding core 1 including the winding core 1 is away from the vertical surface, a tilting moment acts on the winding core 1, which causes the winding core 1 or the web 4 to have a brake lining.
Pressed towards 53 or support plate 52. The tilting moment becomes maximum when the wound material W is fully wound, and becomes smaller as the wound material W becomes smaller. Correspondingly, the force pushing the web 4 towards the brake lining 53 also changes, so that the braking effect is desirably reduced as the unwinding proceeds.

ブレーキライニング53を含む支持板52は巻取りステーシ
ョンにおける支持転子31と同様に、まず巻取りコア1を
軸方向で支持し、かつ巻取りコア1を正しい垂直位置に
保つ働きをする。同時に支持板52はブレーキライニング
53により制動作用も及ぼす。従って付加的制動装置を省
くことができる。
The support plate 52 including the brake linings 53, like the support rollers 31 at the winding station, first serves to axially support the winding core 1 and to keep it in the correct vertical position. At the same time, the support plate 52 has a brake lining
53 also exerts braking action. Therefore, an additional braking device can be omitted.

巻取りコア1と巻取り物Wとの連結は基本的には第1
図、第2図をもとに説明したのと同様に一方のウエブ5
を把持した運搬機械により巻取りコア1の他方のウエブ
4を支持輪8,9に載置することにより行われる。すでに
述べたように、この載置を行うとブレーキライニング53
を含む支持板52は、巻取りコア1の載置を妨げない静止
位置から作用位置へと移動する。空になった巻取りコア
1の取り外しも同様に行われる。
The connection between the winding core 1 and the winding material W is basically the first.
One web 5 in the same manner as described with reference to FIGS.
It is carried out by placing the other web 4 of the winding core 1 on the support wheels 8 and 9 by the carrying machine holding the web. As already mentioned, this placement will result in a brake lining 53
The support plate 52 including the member moves from the stationary position where the winding core 1 is not placed to the working position. The removal of the empty winding core 1 is performed in the same manner.

上述の説明から明らかとなるように本発明による巻取り
コア1は構造が単純であり、それゆえ安価に製造するこ
とができる。更に、空の巻取りコア1が必要とする貯蔵
スペースは小さい。巻取りコア1の取扱いは、空のコア
か巻取り物Wを有するコア、にはかかわりなく簡単に行
うことができる。コアの取扱い、特に巻取・巻戻しステ
ーションへの連結またはそれからの解除は、特に図面に
示したように2個のウエブ4,5を設け、しかも両ウエブ
が機能的に等価であり、すなわちどちらのウエブ4また
は5も支持輪8,9に載置するのに適している場合、きわ
めて簡単である。
As will be clear from the above description, the winding core 1 according to the invention has a simple structure and can therefore be manufactured inexpensively. Moreover, the storage space required by the empty winding core 1 is small. The winding core 1 can be handled easily regardless of whether it is an empty core or a core having the wound material W. The handling of the core, in particular the coupling to and uncoupling from the winding / unwinding station, is provided in particular with two webs 4, 5 as shown in the drawing, and both webs are functionally equivalent, ie which If the webs 4 or 5 are also suitable for resting on the bearing wheels 8, 9, they are quite simple.

1個または複数個のウエブ4,5が巻取りコア1および巻
取り物Wの重心Sに対し巻取りコア1の長手軸2aの方向
にずれ、すなわち本実施例では偏心配置してあるので、
ウエブの一方4または5を支持輪8,9に載置すると傾動
モーメントが発生し、該モーメントが巻取りコア1を巻
取り物Wとともに傾斜位置にもたらそうと努める。こう
した傾斜位置を支持転子31(第1図〜第4図)またはブ
レーキライニング53を含む支持板52(第6図、第7図)
が防止する。しかし巻取りコア1は軸方向で働く一定の
力でこれらの支持部31または52,53の方に押され、巻取
りコア1は回転中確実に案内されかつ垂直位置で保持さ
れる。
Since one or a plurality of webs 4 and 5 are displaced in the direction of the longitudinal axis 2a of the winding core 1 with respect to the center of gravity S of the winding core 1 and the material W to be wound, that is, in this embodiment, they are eccentrically arranged.
When one of the webs 4 or 5 is placed on the support wheels 8 and 9, a tilting moment is generated which tries to bring the winding core 1 with the winding W into the inclined position. The support plate 52 including the support trochanter 31 (FIGS. 1 to 4) or the brake lining 53 (FIGS. 6 and 7) is provided at such an inclined position.
Prevent. However, the winding core 1 is pushed towards these supports 31 or 52, 53 with a constant force acting in the axial direction, so that the winding core 1 is reliably guided during rotation and held in a vertical position.

一杯に巻き取った巻取りコア1の中間貯蔵に必要なスペ
ースは小さい。特に、図示したように巻取りコア1の幅
が巻取り物Wより狭く、またはせいぜい同じ幅であり、
すなわち巻取りコア1が巻取り物Wから張り出さない場
合、所要スペースは小さくなる。巻取りコア1も巻取・
巻戻しステーションもそれらのさまざまな部品を図示し
たものとは別様に構成できることは自明である。さまざ
まに可能な変形態様のうち以下その二、三についてのみ
論じる。
The space required for intermediate storage of the fully wound winding core 1 is small. In particular, as shown in the drawing, the width of the winding core 1 is narrower than that of the material W to be wound, or at most the same width
That is, when the winding core 1 does not project from the winding material W, the required space becomes small. The winding core 1 is also wound.
It is self-evident that the rewind station can also be constructed differently from those shown with its various parts. Only a few of the various possible variants will be discussed below.

巻取りコア1に一方のウエブ4のみを構成し、他方のウ
エブ5を省くことも勿論考えられる。ただしその場合に
は第2のウエブ5があることから生じる操作時の利点も
当然なくなる。1個のウエブを設ける場合、このウエブ
は巻取り円筒2の長手軸2aに対し直角な平面、すなわち
巻取りコア1の重心Sもある平面上に配置することもで
きる。この実施態様において上述の傾動モーメントから
生じる利点を利用できるためには、巻取りコア1上に巻
取り物を横にずらして形成し、巻取りコア1および巻取
り物Wからなる形成物の重心がウエブの支持個所に対し
やはりずれて働くようにせねばならないであろう。
It is of course also conceivable to construct only one web 4 on the winding core 1 and omit the other web 5. However, in that case, the advantage in operation caused by the presence of the second web 5 is naturally lost. If one web is provided, it can also be arranged on a plane perpendicular to the longitudinal axis 2a of the winding cylinder 2, that is to say also on the plane with the center of gravity S of the winding core 1. In order to take advantage of the above-described tilting moments in this embodiment, the center of gravity of the formation consisting of the winding core 1 and the winding W formed by laterally offsetting the winding on the winding core 1. Would still have to work offset with respect to the web support.

ウエブ4,5の代わりに、別構成の支持要素を用いること
もでき、例えば、やはり巻取り円筒2の内面に配置し巻
取り円筒2の内面に向かって開口した環状溝を用いるこ
とができる。この実施態様では、支持輪8,9を、必要な
らば支持部31,52,53も、適宜に別様に構成せねばならな
いことは自明である。
Instead of the webs 4, 5, it is also possible to use alternative support elements, for example annular grooves which are also arranged on the inner surface of the winding cylinder 2 and open towards the inner surface of the winding cylinder 2. It is self-evident that in this embodiment the support wheels 8, 9 and, if necessary, also the support parts 31, 52, 53, have to be appropriately configured differently.

【図面の簡単な説明】[Brief description of drawings]

第1図は巻取りステーション第1実施態様の正面図。 第2図は第1図のII−II線に沿った断面図。 第3図は巻取りステーション第2実施態様の正面図。 第4図は第3図のIV−IV線に沿った断面図。 第5図は第4図のV−V線に沿った拡大断面図。 第6図は巻戻しステーションの正面図。 第7図は第6図のVII−VII線に沿った断面図。 1……巻取りコア、2……巻取り円筒、2a……長手軸、
3……内面、4,5……ウエブ、E,E′……平面、S……重
FIG. 1 is a front view of a first embodiment of a winding station. FIG. 2 is a sectional view taken along the line II-II of FIG. FIG. 3 is a front view of the second embodiment of the winding station. FIG. 4 is a sectional view taken along the line IV-IV in FIG. FIG. 5 is an enlarged cross-sectional view taken along the line VV of FIG. FIG. 6 is a front view of the rewind station. FIG. 7 is a sectional view taken along the line VII-VII of FIG. 1 ... Winding core, 2 ... Winding cylinder, 2a ... Longitudinal axis,
3 ... inside, 4,5 ... web, E, E '... plane, S ... center of gravity

Claims (8)

【特許請求の範囲】[Claims] 【請求項1】軟質シート材、特に印刷された製品から形
成された巻取り物用の搬送可能な巻取りコアにおいて、 巻取りコア(1)は、内面と、巻取り物を巻き付けるた
めの円筒状外周支持面とを有する中空の巻取り円筒
(2)からなり、 巻取り円筒(2)は、巻取り円筒(2)を支持するため
の支持要素(4)を備え、 前記支持要素(4)は巻取り円筒(2)の内面(3)に
沿って延び、巻取り円筒(2)の長手軸(2a)に対して
ほぼ直角に延びかつ空の巻取りコア(1)の重心(S)
から外れて位置した平面上にあり、 しかも、前記支持要素(4)は支持輪(8,9)によって
巻取り円筒の半径方向において巻取り円筒(2)を支持
するための第1支持面(6)と、支持手段(31,52)に
よって巻取り円筒の軸線方向において巻取り円筒(2)
を支持するための第2支持面(7)とを備えていること
を特徴とする巻取り物のための巻取りコア。
1. A transportable winding core for a roll formed from a soft sheet material, in particular a printed product, wherein the roll core (1) has an inner surface and a cylinder for winding the roll. A hollow winding cylinder (2) having an outer peripheral support surface, the winding cylinder (2) comprising a support element (4) for supporting the winding cylinder (2), ) Extends along the inner surface (3) of the winding cylinder (2), extends substantially at right angles to the longitudinal axis (2a) of the winding cylinder (2) and the center of gravity (S) of the empty winding core (1). )
A support surface (4) lying on a plane offset from the first support surface (4) for supporting the winding cylinder (2) in the radial direction of the winding cylinder by means of support wheels (8, 9). 6) and the supporting means (31, 52) in the axial direction of the winding cylinder (2).
And a second support surface (7) for supporting the winding core.
【請求項2】巻取り円筒(2)から内方に突出した環状
ウエブ(4または5)に前記第1支持面(6)または前
記第2支持面(7)を形成したことを特徴とする特許請
求の範囲第1項に記載の巻取りコア。
2. The first supporting surface (6) or the second supporting surface (7) is formed on an annular web (4 or 5) protruding inward from a winding cylinder (2). The winding core according to claim 1.
【請求項3】巻取り円筒(2)の内面に向かって開口し
た環状溝により前記支持要素を形成したことを特徴とす
る特許請求の範囲第1項に記載の巻取りコア。
3. Winding core according to claim 1, characterized in that the support element is formed by an annular groove opening towards the inner surface of the winding cylinder (2).
【請求項4】前記支持要素が2個の離間配置したウエブ
(4,5)であることを特徴とする特許請求の範囲第1項
に記載の巻取りコア。
4. Winding core according to claim 1, characterized in that the support element is two spaced webs (4,5).
【請求項5】前記ウエブ(4または5)が支持輪(8,
9)支持用の環状のころがり面(6)を有することを特
徴とする特許請求の範囲第4項に記載の巻取りコア。
5. The web (4 or 5) is a support wheel (8,
9) The winding core according to claim 4, which has an annular rolling surface (6) for supporting.
【請求項6】前記ウエブ(4,5)の少なくとも一方が少
なくとも1個の支持輪(8または9)のための作用面を
有することを特徴とする特許請求の範囲第4項に記載の
巻取りコア。
6. Winding according to claim 4, characterized in that at least one of the webs (4,5) has a working surface for at least one support wheel (8 or 9). Taking core.
【請求項7】前記ウエブ(4,5)の少なくとも一方が、
少なくとも1個の支持輪と共に咬み合うことのできる歯
を有することを特徴とする特許請求の範囲第4項に記載
の巻取りコア。
7. At least one of the webs (4,5) comprises:
5. Winding core according to claim 4, characterized in that it has teeth which can engage with at least one supporting wheel.
【請求項8】前記ウエブ(4,5)の少なくとも一方に、
駆動要素(38,39,40)と係合するための作用部材、例え
ば係合孔(41)を設けたことを特徴とする特許請求の範
囲第4項に記載の巻取りコア。
8. At least one of the webs (4,5),
Winding core according to claim 4, characterized in that it is provided with an actuating member, for example an engagement hole (41), for engaging with the drive element (38, 39, 40).
JP59196486A 1983-09-19 1984-09-19 Winding core for rolls Expired - Lifetime JPH06102498B2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH5068/83-8 1983-09-19
CH506883 1983-09-19

Related Child Applications (1)

Application Number Title Priority Date Filing Date
JP6189044A Division JPH0825674B2 (en) 1983-09-19 1994-07-20 Winding core winding device

Publications (2)

Publication Number Publication Date
JPS60178147A JPS60178147A (en) 1985-09-12
JPH06102498B2 true JPH06102498B2 (en) 1994-12-14

Family

ID=4287399

Family Applications (3)

Application Number Title Priority Date Filing Date
JP59196486A Expired - Lifetime JPH06102498B2 (en) 1983-09-19 1984-09-19 Winding core for rolls
JP59503413A Granted JPS60501205A (en) 1983-09-19 1984-09-19 printed matter roll
JP6189044A Expired - Lifetime JPH0825674B2 (en) 1983-09-19 1994-07-20 Winding core winding device

Family Applications After (2)

Application Number Title Priority Date Filing Date
JP59503413A Granted JPS60501205A (en) 1983-09-19 1984-09-19 printed matter roll
JP6189044A Expired - Lifetime JPH0825674B2 (en) 1983-09-19 1994-07-20 Winding core winding device

Country Status (8)

Country Link
US (1) US4593865A (en)
EP (1) EP0139999B1 (en)
JP (3) JPH06102498B2 (en)
AT (1) ATE42255T1 (en)
CA (1) CA1239135A (en)
DE (1) DE3477759D1 (en)
FI (1) FI75545C (en)
ZA (1) ZA847337B (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ATE47368T1 (en) * 1984-05-09 1989-11-15 Ferag Ag DEVICE FOR COILING OR UNCOILING CONTINUOUSLY, PREFERABLY IN SHELL FORMATION, PRINTED PRODUCTS.
EP0242608B1 (en) * 1986-04-14 1988-12-21 Ferag AG Device for winding or unwinding a continuous stream of flat flexible products
DE59102896D1 (en) * 1990-04-26 1994-10-20 Ferag Ag Winding core and winding with such a winding core.
EP0959110A4 (en) 1997-02-10 2000-10-25 P & E International Inc Material and process for surface treatment
CN116424761B (en) * 2023-03-09 2023-11-28 江山市超强彩印软包装有限公司 Coiled material transferring device for printing machine and using method thereof

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1992077A (en) * 1934-02-24 1935-02-19 Rock Edgar A La Paper roll holder
US2846159A (en) * 1954-01-15 1958-08-05 Dwight W Reynolds Road guide
US2889123A (en) * 1955-12-05 1959-06-02 Eastman Kodak Co Spool and spindle assembly
US2913276A (en) * 1956-04-11 1959-11-17 David A Collings Magnetic handler for cylindrical articles of magnetic material
US2998206A (en) * 1958-01-13 1961-08-29 Honeywell Regulator Co Mechanical apparatus for supporting and driving a reel assembly
US3844503A (en) * 1973-06-20 1974-10-29 D Peterson Tape winding device
FR2398171A1 (en) * 1977-07-22 1979-02-16 Verstichel Alain Tubular winding drum for roller blinds - is supported by shaped through beam to deflect to horizontal under weight of blind and has drive motor at each end

Also Published As

Publication number Publication date
JPH0358992B2 (en) 1991-09-09
FI75545B (en) 1988-03-31
JPS60501205A (en) 1985-08-01
FI843649L (en) 1985-03-20
FI843649A0 (en) 1984-09-18
EP0139999A1 (en) 1985-05-08
US4593865A (en) 1986-06-10
CA1239135A (en) 1988-07-12
EP0139999B1 (en) 1989-04-19
JPS60178147A (en) 1985-09-12
JPH0825674B2 (en) 1996-03-13
ZA847337B (en) 1985-05-29
DE3477759D1 (en) 1989-05-24
FI75545C (en) 1988-07-11
ATE42255T1 (en) 1989-05-15
JPH07144797A (en) 1995-06-06

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